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首页> 外文期刊>WSEAS transactions on systems and control >Multivariable Controller Design for Unified Power Flow Controller Using Evolutionary Optimization Algorithms
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Multivariable Controller Design for Unified Power Flow Controller Using Evolutionary Optimization Algorithms

机译:使用进化优化算法的统一电流控制器的多变量控制器设计

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This paper discusses the design of a multivariable control for unified power flow controller using evolutionary optimization algorithms. It utilizes two biologically inspired optimization algorithms; the particle swarm optimization algorithm and biogeography optimization algorithms, to obtain the optimal set for the controllers of the UPFC. The UPFC is to control the active power flow through the line, regulate the AC bus voltage, regulate the DC link voltage, and damp the low frequency oscillations in the network through a set of PI controllers and a two stage lead lag compensator respectively. The obtained controllers are then verified through time domain simulation for different variable control to assess the capability of this multivariable control scheme.
机译:本文讨论了用进化优化算法设计统一潮流控制器的多变量控制。它利用了两种受生物学启发的优化算法;粒子群优化算法和生物地理学优化算法,以获得UPFC控制器的最优集。UPFC分别通过一组PI控制器和一个两级超前-滞后补偿器来控制通过线路的有功功率流、调节交流母线电压、调节直流链路电压,并阻尼网络中的低频振荡。然后,通过对不同变量控制的时域仿真来验证所得到的控制器,以评估这种多变量控制方案的性能。

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